1 /* 2 * Copyright(c) 2007 - 2008 Intel Corporation. All rights reserved. 3 * 4 * This program is free software; you can redistribute it and/or modify it 5 * under the terms and conditions of the GNU General Public License, 6 * version 2, as published by the Free Software Foundation. 7 * 8 * This program is distributed in the hope it will be useful, but WITHOUT 9 * ANY WARRANTY; without even the implied warranty of MERCHANTABILITY or 10 * FITNESS FOR A PARTICULAR PURPOSE. See the GNU General Public License for 11 * more details. 12 * 13 * You should have received a copy of the GNU General Public License along with 14 * this program; if not, write to the Free Software Foundation, Inc., 15 * 51 Franklin St - Fifth Floor, Boston, MA 02110-1301 USA. 16 * 17 * Maintained at www.Open-FCoE.org 18 */ 19 20 /* 21 * RPORT GENERAL INFO 22 * 23 * This file contains all processing regarding fc_rports. It contains the 24 * rport state machine and does all rport interaction with the transport class. 25 * There should be no other places in libfc that interact directly with the 26 * transport class in regards to adding and deleting rports. 27 * 28 * fc_rport's represent N_Port's within the fabric. 29 */ 30 31 /* 32 * RPORT LOCKING 33 * 34 * The rport should never hold the rport mutex and then attempt to acquire 35 * either the lport or disc mutexes. The rport's mutex is considered lesser 36 * than both the lport's mutex and the disc mutex. Refer to fc_lport.c for 37 * more comments on the hierarchy. 38 * 39 * The locking strategy is similar to the lport's strategy. The lock protects 40 * the rport's states and is held and released by the entry points to the rport 41 * block. All _enter_* functions correspond to rport states and expect the rport 42 * mutex to be locked before calling them. This means that rports only handle 43 * one request or response at a time, since they're not critical for the I/O 44 * path this potential over-use of the mutex is acceptable. 45 */ 46 47 /* 48 * RPORT REFERENCE COUNTING 49 * 50 * A rport reference should be taken when: 51 * - an rport is allocated 52 * - a workqueue item is scheduled 53 * - an ELS request is send 54 * The reference should be dropped when: 55 * - the workqueue function has finished 56 * - the ELS response is handled 57 * - an rport is removed 58 */ 59 60 #include <linux/kernel.h> 61 #include <linux/spinlock.h> 62 #include <linux/interrupt.h> 63 #include <linux/slab.h> 64 #include <linux/rcupdate.h> 65 #include <linux/timer.h> 66 #include <linux/workqueue.h> 67 #include <linux/export.h> 68 #include <linux/rculist.h> 69 70 #include <asm/unaligned.h> 71 72 #include <scsi/libfc.h> 73 #include <scsi/fc_encode.h> 74 75 #include "fc_libfc.h" 76 77 static struct workqueue_struct *rport_event_queue; 78 79 static void fc_rport_enter_flogi(struct fc_rport_priv *); 80 static void fc_rport_enter_plogi(struct fc_rport_priv *); 81 static void fc_rport_enter_prli(struct fc_rport_priv *); 82 static void fc_rport_enter_rtv(struct fc_rport_priv *); 83 static void fc_rport_enter_ready(struct fc_rport_priv *); 84 static void fc_rport_enter_logo(struct fc_rport_priv *); 85 static void fc_rport_enter_adisc(struct fc_rport_priv *); 86 87 static void fc_rport_recv_plogi_req(struct fc_lport *, struct fc_frame *); 88 static void fc_rport_recv_prli_req(struct fc_rport_priv *, struct fc_frame *); 89 static void fc_rport_recv_prlo_req(struct fc_rport_priv *, struct fc_frame *); 90 static void fc_rport_recv_logo_req(struct fc_lport *, struct fc_frame *); 91 static void fc_rport_timeout(struct work_struct *); 92 static void fc_rport_error(struct fc_rport_priv *, int); 93 static void fc_rport_error_retry(struct fc_rport_priv *, int); 94 static void fc_rport_work(struct work_struct *); 95 96 static const char *fc_rport_state_names[] = { 97 [RPORT_ST_INIT] = "Init", 98 [RPORT_ST_FLOGI] = "FLOGI", 99 [RPORT_ST_PLOGI_WAIT] = "PLOGI_WAIT", 100 [RPORT_ST_PLOGI] = "PLOGI", 101 [RPORT_ST_PRLI] = "PRLI", 102 [RPORT_ST_RTV] = "RTV", 103 [RPORT_ST_READY] = "Ready", 104 [RPORT_ST_ADISC] = "ADISC", 105 [RPORT_ST_DELETE] = "Delete", 106 }; 107 108 /** 109 * fc_rport_lookup() - Lookup a remote port by port_id 110 * @lport: The local port to lookup the remote port on 111 * @port_id: The remote port ID to look up 112 * 113 * The reference count of the fc_rport_priv structure is 114 * increased by one. 115 */ 116 struct fc_rport_priv *fc_rport_lookup(const struct fc_lport *lport, 117 u32 port_id) 118 { 119 struct fc_rport_priv *rdata = NULL, *tmp_rdata; 120 121 rcu_read_lock(); 122 list_for_each_entry_rcu(tmp_rdata, &lport->disc.rports, peers) 123 if (tmp_rdata->ids.port_id == port_id && 124 kref_get_unless_zero(&tmp_rdata->kref)) { 125 rdata = tmp_rdata; 126 break; 127 } 128 rcu_read_unlock(); 129 return rdata; 130 } 131 EXPORT_SYMBOL(fc_rport_lookup); 132 133 /** 134 * fc_rport_create() - Create a new remote port 135 * @lport: The local port this remote port will be associated with 136 * @ids: The identifiers for the new remote port 137 * 138 * The remote port will start in the INIT state. 139 */ 140 struct fc_rport_priv *fc_rport_create(struct fc_lport *lport, u32 port_id) 141 { 142 struct fc_rport_priv *rdata; 143 144 lockdep_assert_held(&lport->disc.disc_mutex); 145 146 rdata = fc_rport_lookup(lport, port_id); 147 if (rdata) 148 return rdata; 149 150 rdata = kzalloc(sizeof(*rdata) + lport->rport_priv_size, GFP_KERNEL); 151 if (!rdata) 152 return NULL; 153 154 rdata->ids.node_name = -1; 155 rdata->ids.port_name = -1; 156 rdata->ids.port_id = port_id; 157 rdata->ids.roles = FC_RPORT_ROLE_UNKNOWN; 158 159 kref_init(&rdata->kref); 160 mutex_init(&rdata->rp_mutex); 161 rdata->local_port = lport; 162 rdata->rp_state = RPORT_ST_INIT; 163 rdata->event = RPORT_EV_NONE; 164 rdata->flags = FC_RP_FLAGS_REC_SUPPORTED; 165 rdata->e_d_tov = lport->e_d_tov; 166 rdata->r_a_tov = lport->r_a_tov; 167 rdata->maxframe_size = FC_MIN_MAX_PAYLOAD; 168 INIT_DELAYED_WORK(&rdata->retry_work, fc_rport_timeout); 169 INIT_WORK(&rdata->event_work, fc_rport_work); 170 if (port_id != FC_FID_DIR_SERV) { 171 rdata->lld_event_callback = lport->tt.rport_event_callback; 172 list_add_rcu(&rdata->peers, &lport->disc.rports); 173 } 174 return rdata; 175 } 176 EXPORT_SYMBOL(fc_rport_create); 177 178 /** 179 * fc_rport_destroy() - Free a remote port after last reference is released 180 * @kref: The remote port's kref 181 */ 182 void fc_rport_destroy(struct kref *kref) 183 { 184 struct fc_rport_priv *rdata; 185 186 rdata = container_of(kref, struct fc_rport_priv, kref); 187 WARN_ON(!list_empty(&rdata->peers)); 188 kfree_rcu(rdata, rcu); 189 } 190 EXPORT_SYMBOL(fc_rport_destroy); 191 192 /** 193 * fc_rport_state() - Return a string identifying the remote port's state 194 * @rdata: The remote port 195 */ 196 static const char *fc_rport_state(struct fc_rport_priv *rdata) 197 { 198 const char *cp; 199 200 cp = fc_rport_state_names[rdata->rp_state]; 201 if (!cp) 202 cp = "Unknown"; 203 return cp; 204 } 205 206 /** 207 * fc_set_rport_loss_tmo() - Set the remote port loss timeout 208 * @rport: The remote port that gets a new timeout value 209 * @timeout: The new timeout value (in seconds) 210 */ 211 void fc_set_rport_loss_tmo(struct fc_rport *rport, u32 timeout) 212 { 213 if (timeout) 214 rport->dev_loss_tmo = timeout; 215 else 216 rport->dev_loss_tmo = 1; 217 } 218 EXPORT_SYMBOL(fc_set_rport_loss_tmo); 219 220 /** 221 * fc_plogi_get_maxframe() - Get the maximum payload from the common service 222 * parameters in a FLOGI frame 223 * @flp: The FLOGI or PLOGI payload 224 * @maxval: The maximum frame size upper limit; this may be less than what 225 * is in the service parameters 226 */ 227 static unsigned int fc_plogi_get_maxframe(struct fc_els_flogi *flp, 228 unsigned int maxval) 229 { 230 unsigned int mfs; 231 232 /* 233 * Get max payload from the common service parameters and the 234 * class 3 receive data field size. 235 */ 236 mfs = ntohs(flp->fl_csp.sp_bb_data) & FC_SP_BB_DATA_MASK; 237 if (mfs >= FC_SP_MIN_MAX_PAYLOAD && mfs < maxval) 238 maxval = mfs; 239 mfs = ntohs(flp->fl_cssp[3 - 1].cp_rdfs); 240 if (mfs >= FC_SP_MIN_MAX_PAYLOAD && mfs < maxval) 241 maxval = mfs; 242 return maxval; 243 } 244 245 /** 246 * fc_rport_state_enter() - Change the state of a remote port 247 * @rdata: The remote port whose state should change 248 * @new: The new state 249 */ 250 static void fc_rport_state_enter(struct fc_rport_priv *rdata, 251 enum fc_rport_state new) 252 { 253 lockdep_assert_held(&rdata->rp_mutex); 254 255 if (rdata->rp_state != new) 256 rdata->retries = 0; 257 rdata->rp_state = new; 258 } 259 260 /** 261 * fc_rport_work() - Handler for remote port events in the rport_event_queue 262 * @work: Handle to the remote port being dequeued 263 * 264 * Reference counting: drops kref on return 265 */ 266 static void fc_rport_work(struct work_struct *work) 267 { 268 u32 port_id; 269 struct fc_rport_priv *rdata = 270 container_of(work, struct fc_rport_priv, event_work); 271 struct fc_rport_libfc_priv *rpriv; 272 enum fc_rport_event event; 273 struct fc_lport *lport = rdata->local_port; 274 struct fc_rport_operations *rport_ops; 275 struct fc_rport_identifiers ids; 276 struct fc_rport *rport; 277 struct fc4_prov *prov; 278 u8 type; 279 280 mutex_lock(&rdata->rp_mutex); 281 event = rdata->event; 282 rport_ops = rdata->ops; 283 rport = rdata->rport; 284 285 FC_RPORT_DBG(rdata, "work event %u\n", event); 286 287 switch (event) { 288 case RPORT_EV_READY: 289 ids = rdata->ids; 290 rdata->event = RPORT_EV_NONE; 291 rdata->major_retries = 0; 292 kref_get(&rdata->kref); 293 mutex_unlock(&rdata->rp_mutex); 294 295 if (!rport) { 296 FC_RPORT_DBG(rdata, "No rport!\n"); 297 rport = fc_remote_port_add(lport->host, 0, &ids); 298 } 299 if (!rport) { 300 FC_RPORT_DBG(rdata, "Failed to add the rport\n"); 301 fc_rport_logoff(rdata); 302 kref_put(&rdata->kref, fc_rport_destroy); 303 return; 304 } 305 mutex_lock(&rdata->rp_mutex); 306 if (rdata->rport) 307 FC_RPORT_DBG(rdata, "rport already allocated\n"); 308 rdata->rport = rport; 309 rport->maxframe_size = rdata->maxframe_size; 310 rport->supported_classes = rdata->supported_classes; 311 312 rpriv = rport->dd_data; 313 rpriv->local_port = lport; 314 rpriv->rp_state = rdata->rp_state; 315 rpriv->flags = rdata->flags; 316 rpriv->e_d_tov = rdata->e_d_tov; 317 rpriv->r_a_tov = rdata->r_a_tov; 318 mutex_unlock(&rdata->rp_mutex); 319 320 if (rport_ops && rport_ops->event_callback) { 321 FC_RPORT_DBG(rdata, "callback ev %d\n", event); 322 rport_ops->event_callback(lport, rdata, event); 323 } 324 if (rdata->lld_event_callback) { 325 FC_RPORT_DBG(rdata, "lld callback ev %d\n", event); 326 rdata->lld_event_callback(lport, rdata, event); 327 } 328 kref_put(&rdata->kref, fc_rport_destroy); 329 break; 330 331 case RPORT_EV_FAILED: 332 case RPORT_EV_LOGO: 333 case RPORT_EV_STOP: 334 if (rdata->prli_count) { 335 mutex_lock(&fc_prov_mutex); 336 for (type = 1; type < FC_FC4_PROV_SIZE; type++) { 337 prov = fc_passive_prov[type]; 338 if (prov && prov->prlo) 339 prov->prlo(rdata); 340 } 341 mutex_unlock(&fc_prov_mutex); 342 } 343 port_id = rdata->ids.port_id; 344 mutex_unlock(&rdata->rp_mutex); 345 346 if (rport_ops && rport_ops->event_callback) { 347 FC_RPORT_DBG(rdata, "callback ev %d\n", event); 348 rport_ops->event_callback(lport, rdata, event); 349 } 350 if (rdata->lld_event_callback) { 351 FC_RPORT_DBG(rdata, "lld callback ev %d\n", event); 352 rdata->lld_event_callback(lport, rdata, event); 353 } 354 if (cancel_delayed_work_sync(&rdata->retry_work)) 355 kref_put(&rdata->kref, fc_rport_destroy); 356 357 /* 358 * Reset any outstanding exchanges before freeing rport. 359 */ 360 lport->tt.exch_mgr_reset(lport, 0, port_id); 361 lport->tt.exch_mgr_reset(lport, port_id, 0); 362 363 if (rport) { 364 rpriv = rport->dd_data; 365 rpriv->rp_state = RPORT_ST_DELETE; 366 mutex_lock(&rdata->rp_mutex); 367 rdata->rport = NULL; 368 mutex_unlock(&rdata->rp_mutex); 369 fc_remote_port_delete(rport); 370 } 371 372 mutex_lock(&rdata->rp_mutex); 373 if (rdata->rp_state == RPORT_ST_DELETE) { 374 if (port_id == FC_FID_DIR_SERV) { 375 rdata->event = RPORT_EV_NONE; 376 mutex_unlock(&rdata->rp_mutex); 377 kref_put(&rdata->kref, fc_rport_destroy); 378 } else if ((rdata->flags & FC_RP_STARTED) && 379 rdata->major_retries < 380 lport->max_rport_retry_count) { 381 rdata->major_retries++; 382 rdata->event = RPORT_EV_NONE; 383 FC_RPORT_DBG(rdata, "work restart\n"); 384 fc_rport_enter_flogi(rdata); 385 mutex_unlock(&rdata->rp_mutex); 386 } else { 387 mutex_unlock(&rdata->rp_mutex); 388 FC_RPORT_DBG(rdata, "work delete\n"); 389 mutex_lock(&lport->disc.disc_mutex); 390 list_del_rcu(&rdata->peers); 391 mutex_unlock(&lport->disc.disc_mutex); 392 kref_put(&rdata->kref, fc_rport_destroy); 393 } 394 } else { 395 /* 396 * Re-open for events. Reissue READY event if ready. 397 */ 398 rdata->event = RPORT_EV_NONE; 399 if (rdata->rp_state == RPORT_ST_READY) { 400 FC_RPORT_DBG(rdata, "work reopen\n"); 401 fc_rport_enter_ready(rdata); 402 } 403 mutex_unlock(&rdata->rp_mutex); 404 } 405 break; 406 407 default: 408 mutex_unlock(&rdata->rp_mutex); 409 break; 410 } 411 kref_put(&rdata->kref, fc_rport_destroy); 412 } 413 414 /** 415 * fc_rport_login() - Start the remote port login state machine 416 * @rdata: The remote port to be logged in to 417 * 418 * Initiates the RP state machine. It is called from the LP module. 419 * This function will issue the following commands to the N_Port 420 * identified by the FC ID provided. 421 * 422 * - PLOGI 423 * - PRLI 424 * - RTV 425 * 426 * Locking Note: Called without the rport lock held. This 427 * function will hold the rport lock, call an _enter_* 428 * function and then unlock the rport. 429 * 430 * This indicates the intent to be logged into the remote port. 431 * If it appears we are already logged in, ADISC is used to verify 432 * the setup. 433 */ 434 int fc_rport_login(struct fc_rport_priv *rdata) 435 { 436 mutex_lock(&rdata->rp_mutex); 437 438 if (rdata->flags & FC_RP_STARTED) { 439 FC_RPORT_DBG(rdata, "port already started\n"); 440 mutex_unlock(&rdata->rp_mutex); 441 return 0; 442 } 443 444 rdata->flags |= FC_RP_STARTED; 445 switch (rdata->rp_state) { 446 case RPORT_ST_READY: 447 FC_RPORT_DBG(rdata, "ADISC port\n"); 448 fc_rport_enter_adisc(rdata); 449 break; 450 case RPORT_ST_DELETE: 451 FC_RPORT_DBG(rdata, "Restart deleted port\n"); 452 break; 453 case RPORT_ST_INIT: 454 FC_RPORT_DBG(rdata, "Login to port\n"); 455 fc_rport_enter_flogi(rdata); 456 break; 457 default: 458 FC_RPORT_DBG(rdata, "Login in progress, state %s\n", 459 fc_rport_state(rdata)); 460 break; 461 } 462 mutex_unlock(&rdata->rp_mutex); 463 464 return 0; 465 } 466 EXPORT_SYMBOL(fc_rport_login); 467 468 /** 469 * fc_rport_enter_delete() - Schedule a remote port to be deleted 470 * @rdata: The remote port to be deleted 471 * @event: The event to report as the reason for deletion 472 * 473 * Allow state change into DELETE only once. 474 * 475 * Call queue_work only if there's no event already pending. 476 * Set the new event so that the old pending event will not occur. 477 * Since we have the mutex, even if fc_rport_work() is already started, 478 * it'll see the new event. 479 * 480 * Reference counting: does not modify kref 481 */ 482 static void fc_rport_enter_delete(struct fc_rport_priv *rdata, 483 enum fc_rport_event event) 484 { 485 lockdep_assert_held(&rdata->rp_mutex); 486 487 if (rdata->rp_state == RPORT_ST_DELETE) 488 return; 489 490 FC_RPORT_DBG(rdata, "Delete port\n"); 491 492 fc_rport_state_enter(rdata, RPORT_ST_DELETE); 493 494 kref_get(&rdata->kref); 495 if (rdata->event == RPORT_EV_NONE && 496 !queue_work(rport_event_queue, &rdata->event_work)) 497 kref_put(&rdata->kref, fc_rport_destroy); 498 499 rdata->event = event; 500 } 501 502 /** 503 * fc_rport_logoff() - Logoff and remove a remote port 504 * @rdata: The remote port to be logged off of 505 * 506 * Locking Note: Called without the rport lock held. This 507 * function will hold the rport lock, call an _enter_* 508 * function and then unlock the rport. 509 */ 510 int fc_rport_logoff(struct fc_rport_priv *rdata) 511 { 512 struct fc_lport *lport = rdata->local_port; 513 u32 port_id = rdata->ids.port_id; 514 515 mutex_lock(&rdata->rp_mutex); 516 517 FC_RPORT_DBG(rdata, "Remove port\n"); 518 519 rdata->flags &= ~FC_RP_STARTED; 520 if (rdata->rp_state == RPORT_ST_DELETE) { 521 FC_RPORT_DBG(rdata, "Port in Delete state, not removing\n"); 522 goto out; 523 } 524 /* 525 * FC-LS states: 526 * To explicitly Logout, the initiating Nx_Port shall terminate 527 * other open Sequences that it initiated with the destination 528 * Nx_Port prior to performing Logout. 529 */ 530 lport->tt.exch_mgr_reset(lport, 0, port_id); 531 lport->tt.exch_mgr_reset(lport, port_id, 0); 532 533 fc_rport_enter_logo(rdata); 534 535 /* 536 * Change the state to Delete so that we discard 537 * the response. 538 */ 539 fc_rport_enter_delete(rdata, RPORT_EV_STOP); 540 out: 541 mutex_unlock(&rdata->rp_mutex); 542 return 0; 543 } 544 EXPORT_SYMBOL(fc_rport_logoff); 545 546 /** 547 * fc_rport_enter_ready() - Transition to the RPORT_ST_READY state 548 * @rdata: The remote port that is ready 549 * 550 * Reference counting: schedules workqueue, does not modify kref 551 */ 552 static void fc_rport_enter_ready(struct fc_rport_priv *rdata) 553 { 554 lockdep_assert_held(&rdata->rp_mutex); 555 556 fc_rport_state_enter(rdata, RPORT_ST_READY); 557 558 FC_RPORT_DBG(rdata, "Port is Ready\n"); 559 560 kref_get(&rdata->kref); 561 if (rdata->event == RPORT_EV_NONE && 562 !queue_work(rport_event_queue, &rdata->event_work)) 563 kref_put(&rdata->kref, fc_rport_destroy); 564 565 rdata->event = RPORT_EV_READY; 566 } 567 568 /** 569 * fc_rport_timeout() - Handler for the retry_work timer 570 * @work: Handle to the remote port that has timed out 571 * 572 * Locking Note: Called without the rport lock held. This 573 * function will hold the rport lock, call an _enter_* 574 * function and then unlock the rport. 575 * 576 * Reference counting: Drops kref on return. 577 */ 578 static void fc_rport_timeout(struct work_struct *work) 579 { 580 struct fc_rport_priv *rdata = 581 container_of(work, struct fc_rport_priv, retry_work.work); 582 583 mutex_lock(&rdata->rp_mutex); 584 FC_RPORT_DBG(rdata, "Port timeout, state %s\n", fc_rport_state(rdata)); 585 586 switch (rdata->rp_state) { 587 case RPORT_ST_FLOGI: 588 fc_rport_enter_flogi(rdata); 589 break; 590 case RPORT_ST_PLOGI: 591 fc_rport_enter_plogi(rdata); 592 break; 593 case RPORT_ST_PRLI: 594 fc_rport_enter_prli(rdata); 595 break; 596 case RPORT_ST_RTV: 597 fc_rport_enter_rtv(rdata); 598 break; 599 case RPORT_ST_ADISC: 600 fc_rport_enter_adisc(rdata); 601 break; 602 case RPORT_ST_PLOGI_WAIT: 603 case RPORT_ST_READY: 604 case RPORT_ST_INIT: 605 case RPORT_ST_DELETE: 606 break; 607 } 608 609 mutex_unlock(&rdata->rp_mutex); 610 kref_put(&rdata->kref, fc_rport_destroy); 611 } 612 613 /** 614 * fc_rport_error() - Error handler, called once retries have been exhausted 615 * @rdata: The remote port the error is happened on 616 * @err: The error code 617 * 618 * Reference counting: does not modify kref 619 */ 620 static void fc_rport_error(struct fc_rport_priv *rdata, int err) 621 { 622 struct fc_lport *lport = rdata->local_port; 623 624 lockdep_assert_held(&rdata->rp_mutex); 625 626 FC_RPORT_DBG(rdata, "Error %d in state %s, retries %d\n", 627 -err, fc_rport_state(rdata), rdata->retries); 628 629 switch (rdata->rp_state) { 630 case RPORT_ST_FLOGI: 631 rdata->flags &= ~FC_RP_STARTED; 632 fc_rport_enter_delete(rdata, RPORT_EV_FAILED); 633 break; 634 case RPORT_ST_PLOGI: 635 if (lport->point_to_multipoint) { 636 rdata->flags &= ~FC_RP_STARTED; 637 fc_rport_enter_delete(rdata, RPORT_EV_FAILED); 638 } else 639 fc_rport_enter_logo(rdata); 640 break; 641 case RPORT_ST_RTV: 642 fc_rport_enter_ready(rdata); 643 break; 644 case RPORT_ST_PRLI: 645 case RPORT_ST_ADISC: 646 fc_rport_enter_logo(rdata); 647 break; 648 case RPORT_ST_PLOGI_WAIT: 649 case RPORT_ST_DELETE: 650 case RPORT_ST_READY: 651 case RPORT_ST_INIT: 652 break; 653 } 654 } 655 656 /** 657 * fc_rport_error_retry() - Handler for remote port state retries 658 * @rdata: The remote port whose state is to be retried 659 * @err: The error code 660 * 661 * If the error was an exchange timeout retry immediately, 662 * otherwise wait for E_D_TOV. 663 * 664 * Reference counting: increments kref when scheduling retry_work 665 */ 666 static void fc_rport_error_retry(struct fc_rport_priv *rdata, int err) 667 { 668 unsigned long delay = msecs_to_jiffies(rdata->e_d_tov); 669 670 lockdep_assert_held(&rdata->rp_mutex); 671 672 /* make sure this isn't an FC_EX_CLOSED error, never retry those */ 673 if (err == -FC_EX_CLOSED) 674 goto out; 675 676 if (rdata->retries < rdata->local_port->max_rport_retry_count) { 677 FC_RPORT_DBG(rdata, "Error %d in state %s, retrying\n", 678 err, fc_rport_state(rdata)); 679 rdata->retries++; 680 /* no additional delay on exchange timeouts */ 681 if (err == -FC_EX_TIMEOUT) 682 delay = 0; 683 kref_get(&rdata->kref); 684 if (!schedule_delayed_work(&rdata->retry_work, delay)) 685 kref_put(&rdata->kref, fc_rport_destroy); 686 return; 687 } 688 689 out: 690 fc_rport_error(rdata, err); 691 } 692 693 /** 694 * fc_rport_login_complete() - Handle parameters and completion of p-mp login. 695 * @rdata: The remote port which we logged into or which logged into us. 696 * @fp: The FLOGI or PLOGI request or response frame 697 * 698 * Returns non-zero error if a problem is detected with the frame. 699 * Does not free the frame. 700 * 701 * This is only used in point-to-multipoint mode for FIP currently. 702 */ 703 static int fc_rport_login_complete(struct fc_rport_priv *rdata, 704 struct fc_frame *fp) 705 { 706 struct fc_lport *lport = rdata->local_port; 707 struct fc_els_flogi *flogi; 708 unsigned int e_d_tov; 709 u16 csp_flags; 710 711 flogi = fc_frame_payload_get(fp, sizeof(*flogi)); 712 if (!flogi) 713 return -EINVAL; 714 715 csp_flags = ntohs(flogi->fl_csp.sp_features); 716 717 if (fc_frame_payload_op(fp) == ELS_FLOGI) { 718 if (csp_flags & FC_SP_FT_FPORT) { 719 FC_RPORT_DBG(rdata, "Fabric bit set in FLOGI\n"); 720 return -EINVAL; 721 } 722 } else { 723 724 /* 725 * E_D_TOV is not valid on an incoming FLOGI request. 726 */ 727 e_d_tov = ntohl(flogi->fl_csp.sp_e_d_tov); 728 if (csp_flags & FC_SP_FT_EDTR) 729 e_d_tov /= 1000000; 730 if (e_d_tov > rdata->e_d_tov) 731 rdata->e_d_tov = e_d_tov; 732 } 733 rdata->maxframe_size = fc_plogi_get_maxframe(flogi, lport->mfs); 734 return 0; 735 } 736 737 /** 738 * fc_rport_flogi_resp() - Handle response to FLOGI request for p-mp mode 739 * @sp: The sequence that the FLOGI was on 740 * @fp: The FLOGI response frame 741 * @rp_arg: The remote port that received the FLOGI response 742 */ 743 static void fc_rport_flogi_resp(struct fc_seq *sp, struct fc_frame *fp, 744 void *rp_arg) 745 { 746 struct fc_rport_priv *rdata = rp_arg; 747 struct fc_lport *lport = rdata->local_port; 748 struct fc_els_flogi *flogi; 749 unsigned int r_a_tov; 750 u8 opcode; 751 int err = 0; 752 753 FC_RPORT_DBG(rdata, "Received a FLOGI %s\n", 754 IS_ERR(fp) ? "error" : fc_els_resp_type(fp)); 755 756 if (fp == ERR_PTR(-FC_EX_CLOSED)) 757 goto put; 758 759 mutex_lock(&rdata->rp_mutex); 760 761 if (rdata->rp_state != RPORT_ST_FLOGI) { 762 FC_RPORT_DBG(rdata, "Received a FLOGI response, but in state " 763 "%s\n", fc_rport_state(rdata)); 764 if (IS_ERR(fp)) 765 goto err; 766 goto out; 767 } 768 769 if (IS_ERR(fp)) { 770 fc_rport_error(rdata, PTR_ERR(fp)); 771 goto err; 772 } 773 opcode = fc_frame_payload_op(fp); 774 if (opcode == ELS_LS_RJT) { 775 struct fc_els_ls_rjt *rjt; 776 777 rjt = fc_frame_payload_get(fp, sizeof(*rjt)); 778 FC_RPORT_DBG(rdata, "FLOGI ELS rejected, reason %x expl %x\n", 779 rjt->er_reason, rjt->er_explan); 780 err = -FC_EX_ELS_RJT; 781 goto bad; 782 } else if (opcode != ELS_LS_ACC) { 783 FC_RPORT_DBG(rdata, "FLOGI ELS invalid opcode %x\n", opcode); 784 err = -FC_EX_ELS_RJT; 785 goto bad; 786 } 787 if (fc_rport_login_complete(rdata, fp)) { 788 FC_RPORT_DBG(rdata, "FLOGI failed, no login\n"); 789 err = -FC_EX_INV_LOGIN; 790 goto bad; 791 } 792 793 flogi = fc_frame_payload_get(fp, sizeof(*flogi)); 794 if (!flogi) { 795 err = -FC_EX_ALLOC_ERR; 796 goto bad; 797 } 798 r_a_tov = ntohl(flogi->fl_csp.sp_r_a_tov); 799 if (r_a_tov > rdata->r_a_tov) 800 rdata->r_a_tov = r_a_tov; 801 802 if (rdata->ids.port_name < lport->wwpn) 803 fc_rport_enter_plogi(rdata); 804 else 805 fc_rport_state_enter(rdata, RPORT_ST_PLOGI_WAIT); 806 out: 807 fc_frame_free(fp); 808 err: 809 mutex_unlock(&rdata->rp_mutex); 810 put: 811 kref_put(&rdata->kref, fc_rport_destroy); 812 return; 813 bad: 814 FC_RPORT_DBG(rdata, "Bad FLOGI response\n"); 815 fc_rport_error_retry(rdata, err); 816 goto out; 817 } 818 819 /** 820 * fc_rport_enter_flogi() - Send a FLOGI request to the remote port for p-mp 821 * @rdata: The remote port to send a FLOGI to 822 * 823 * Reference counting: increments kref when sending ELS 824 */ 825 static void fc_rport_enter_flogi(struct fc_rport_priv *rdata) 826 { 827 struct fc_lport *lport = rdata->local_port; 828 struct fc_frame *fp; 829 830 lockdep_assert_held(&rdata->rp_mutex); 831 832 if (!lport->point_to_multipoint) 833 return fc_rport_enter_plogi(rdata); 834 835 FC_RPORT_DBG(rdata, "Entered FLOGI state from %s state\n", 836 fc_rport_state(rdata)); 837 838 fc_rport_state_enter(rdata, RPORT_ST_FLOGI); 839 840 fp = fc_frame_alloc(lport, sizeof(struct fc_els_flogi)); 841 if (!fp) 842 return fc_rport_error_retry(rdata, -FC_EX_ALLOC_ERR); 843 844 kref_get(&rdata->kref); 845 if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_FLOGI, 846 fc_rport_flogi_resp, rdata, 847 2 * lport->r_a_tov)) { 848 fc_rport_error_retry(rdata, -FC_EX_XMIT_ERR); 849 kref_put(&rdata->kref, fc_rport_destroy); 850 } 851 } 852 853 /** 854 * fc_rport_recv_flogi_req() - Handle Fabric Login (FLOGI) request in p-mp mode 855 * @lport: The local port that received the PLOGI request 856 * @rx_fp: The PLOGI request frame 857 * 858 * Reference counting: drops kref on return 859 */ 860 static void fc_rport_recv_flogi_req(struct fc_lport *lport, 861 struct fc_frame *rx_fp) 862 { 863 struct fc_disc *disc; 864 struct fc_els_flogi *flp; 865 struct fc_rport_priv *rdata; 866 struct fc_frame *fp = rx_fp; 867 struct fc_seq_els_data rjt_data; 868 u32 sid; 869 870 sid = fc_frame_sid(fp); 871 872 FC_RPORT_ID_DBG(lport, sid, "Received FLOGI request\n"); 873 874 disc = &lport->disc; 875 if (!lport->point_to_multipoint) { 876 rjt_data.reason = ELS_RJT_UNSUP; 877 rjt_data.explan = ELS_EXPL_NONE; 878 goto reject; 879 } 880 881 flp = fc_frame_payload_get(fp, sizeof(*flp)); 882 if (!flp) { 883 rjt_data.reason = ELS_RJT_LOGIC; 884 rjt_data.explan = ELS_EXPL_INV_LEN; 885 goto reject; 886 } 887 888 rdata = fc_rport_lookup(lport, sid); 889 if (!rdata) { 890 rjt_data.reason = ELS_RJT_FIP; 891 rjt_data.explan = ELS_EXPL_NOT_NEIGHBOR; 892 goto reject; 893 } 894 mutex_lock(&rdata->rp_mutex); 895 896 FC_RPORT_DBG(rdata, "Received FLOGI in %s state\n", 897 fc_rport_state(rdata)); 898 899 switch (rdata->rp_state) { 900 case RPORT_ST_INIT: 901 /* 902 * If received the FLOGI request on RPORT which is INIT state 903 * (means not transition to FLOGI either fc_rport timeout 904 * function didn;t trigger or this end hasn;t received 905 * beacon yet from other end. In that case only, allow RPORT 906 * state machine to continue, otherwise fall through which 907 * causes the code to send reject response. 908 * NOTE; Not checking for FIP->state such as VNMP_UP or 909 * VNMP_CLAIM because if FIP state is not one of those, 910 * RPORT wouldn;t have created and 'rport_lookup' would have 911 * failed anyway in that case. 912 */ 913 break; 914 case RPORT_ST_DELETE: 915 mutex_unlock(&rdata->rp_mutex); 916 rjt_data.reason = ELS_RJT_FIP; 917 rjt_data.explan = ELS_EXPL_NOT_NEIGHBOR; 918 goto reject_put; 919 case RPORT_ST_FLOGI: 920 case RPORT_ST_PLOGI_WAIT: 921 case RPORT_ST_PLOGI: 922 break; 923 case RPORT_ST_PRLI: 924 case RPORT_ST_RTV: 925 case RPORT_ST_READY: 926 case RPORT_ST_ADISC: 927 /* 928 * Set the remote port to be deleted and to then restart. 929 * This queues work to be sure exchanges are reset. 930 */ 931 fc_rport_enter_delete(rdata, RPORT_EV_LOGO); 932 mutex_unlock(&rdata->rp_mutex); 933 rjt_data.reason = ELS_RJT_BUSY; 934 rjt_data.explan = ELS_EXPL_NONE; 935 goto reject_put; 936 } 937 if (fc_rport_login_complete(rdata, fp)) { 938 mutex_unlock(&rdata->rp_mutex); 939 rjt_data.reason = ELS_RJT_LOGIC; 940 rjt_data.explan = ELS_EXPL_NONE; 941 goto reject_put; 942 } 943 944 fp = fc_frame_alloc(lport, sizeof(*flp)); 945 if (!fp) 946 goto out; 947 948 fc_flogi_fill(lport, fp); 949 flp = fc_frame_payload_get(fp, sizeof(*flp)); 950 flp->fl_cmd = ELS_LS_ACC; 951 952 fc_fill_reply_hdr(fp, rx_fp, FC_RCTL_ELS_REP, 0); 953 lport->tt.frame_send(lport, fp); 954 955 /* 956 * Do not proceed with the state machine if our 957 * FLOGI has crossed with an FLOGI from the 958 * remote port; wait for the FLOGI response instead. 959 */ 960 if (rdata->rp_state != RPORT_ST_FLOGI) { 961 if (rdata->ids.port_name < lport->wwpn) 962 fc_rport_enter_plogi(rdata); 963 else 964 fc_rport_state_enter(rdata, RPORT_ST_PLOGI_WAIT); 965 } 966 out: 967 mutex_unlock(&rdata->rp_mutex); 968 kref_put(&rdata->kref, fc_rport_destroy); 969 fc_frame_free(rx_fp); 970 return; 971 972 reject_put: 973 kref_put(&rdata->kref, fc_rport_destroy); 974 reject: 975 fc_seq_els_rsp_send(rx_fp, ELS_LS_RJT, &rjt_data); 976 fc_frame_free(rx_fp); 977 } 978 979 /** 980 * fc_rport_plogi_resp() - Handler for ELS PLOGI responses 981 * @sp: The sequence the PLOGI is on 982 * @fp: The PLOGI response frame 983 * @rdata_arg: The remote port that sent the PLOGI response 984 * 985 * Locking Note: This function will be called without the rport lock 986 * held, but it will lock, call an _enter_* function or fc_rport_error 987 * and then unlock the rport. 988 */ 989 static void fc_rport_plogi_resp(struct fc_seq *sp, struct fc_frame *fp, 990 void *rdata_arg) 991 { 992 struct fc_rport_priv *rdata = rdata_arg; 993 struct fc_lport *lport = rdata->local_port; 994 struct fc_els_flogi *plp = NULL; 995 u16 csp_seq; 996 u16 cssp_seq; 997 u8 op; 998 999 FC_RPORT_DBG(rdata, "Received a PLOGI %s\n", fc_els_resp_type(fp)); 1000 1001 if (fp == ERR_PTR(-FC_EX_CLOSED)) 1002 goto put; 1003 1004 mutex_lock(&rdata->rp_mutex); 1005 1006 if (rdata->rp_state != RPORT_ST_PLOGI) { 1007 FC_RPORT_DBG(rdata, "Received a PLOGI response, but in state " 1008 "%s\n", fc_rport_state(rdata)); 1009 if (IS_ERR(fp)) 1010 goto err; 1011 goto out; 1012 } 1013 1014 if (IS_ERR(fp)) { 1015 fc_rport_error_retry(rdata, PTR_ERR(fp)); 1016 goto err; 1017 } 1018 1019 op = fc_frame_payload_op(fp); 1020 if (op == ELS_LS_ACC && 1021 (plp = fc_frame_payload_get(fp, sizeof(*plp))) != NULL) { 1022 rdata->ids.port_name = get_unaligned_be64(&plp->fl_wwpn); 1023 rdata->ids.node_name = get_unaligned_be64(&plp->fl_wwnn); 1024 1025 /* save plogi response sp_features for further reference */ 1026 rdata->sp_features = ntohs(plp->fl_csp.sp_features); 1027 1028 if (lport->point_to_multipoint) 1029 fc_rport_login_complete(rdata, fp); 1030 csp_seq = ntohs(plp->fl_csp.sp_tot_seq); 1031 cssp_seq = ntohs(plp->fl_cssp[3 - 1].cp_con_seq); 1032 if (cssp_seq < csp_seq) 1033 csp_seq = cssp_seq; 1034 rdata->max_seq = csp_seq; 1035 rdata->maxframe_size = fc_plogi_get_maxframe(plp, lport->mfs); 1036 fc_rport_enter_prli(rdata); 1037 } else { 1038 struct fc_els_ls_rjt *rjt; 1039 1040 rjt = fc_frame_payload_get(fp, sizeof(*rjt)); 1041 if (!rjt) 1042 FC_RPORT_DBG(rdata, "PLOGI bad response\n"); 1043 else 1044 FC_RPORT_DBG(rdata, "PLOGI ELS rejected, reason %x expl %x\n", 1045 rjt->er_reason, rjt->er_explan); 1046 fc_rport_error_retry(rdata, -FC_EX_ELS_RJT); 1047 } 1048 out: 1049 fc_frame_free(fp); 1050 err: 1051 mutex_unlock(&rdata->rp_mutex); 1052 put: 1053 kref_put(&rdata->kref, fc_rport_destroy); 1054 } 1055 1056 static bool 1057 fc_rport_compatible_roles(struct fc_lport *lport, struct fc_rport_priv *rdata) 1058 { 1059 if (rdata->ids.roles == FC_PORT_ROLE_UNKNOWN) 1060 return true; 1061 if ((rdata->ids.roles & FC_PORT_ROLE_FCP_TARGET) && 1062 (lport->service_params & FCP_SPPF_INIT_FCN)) 1063 return true; 1064 if ((rdata->ids.roles & FC_PORT_ROLE_FCP_INITIATOR) && 1065 (lport->service_params & FCP_SPPF_TARG_FCN)) 1066 return true; 1067 return false; 1068 } 1069 1070 /** 1071 * fc_rport_enter_plogi() - Send Port Login (PLOGI) request 1072 * @rdata: The remote port to send a PLOGI to 1073 * 1074 * Reference counting: increments kref when sending ELS 1075 */ 1076 static void fc_rport_enter_plogi(struct fc_rport_priv *rdata) 1077 { 1078 struct fc_lport *lport = rdata->local_port; 1079 struct fc_frame *fp; 1080 1081 lockdep_assert_held(&rdata->rp_mutex); 1082 1083 if (!fc_rport_compatible_roles(lport, rdata)) { 1084 FC_RPORT_DBG(rdata, "PLOGI suppressed for incompatible role\n"); 1085 fc_rport_state_enter(rdata, RPORT_ST_PLOGI_WAIT); 1086 return; 1087 } 1088 1089 FC_RPORT_DBG(rdata, "Port entered PLOGI state from %s state\n", 1090 fc_rport_state(rdata)); 1091 1092 fc_rport_state_enter(rdata, RPORT_ST_PLOGI); 1093 1094 rdata->maxframe_size = FC_MIN_MAX_PAYLOAD; 1095 fp = fc_frame_alloc(lport, sizeof(struct fc_els_flogi)); 1096 if (!fp) { 1097 FC_RPORT_DBG(rdata, "%s frame alloc failed\n", __func__); 1098 fc_rport_error_retry(rdata, -FC_EX_ALLOC_ERR); 1099 return; 1100 } 1101 rdata->e_d_tov = lport->e_d_tov; 1102 1103 kref_get(&rdata->kref); 1104 if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_PLOGI, 1105 fc_rport_plogi_resp, rdata, 1106 2 * lport->r_a_tov)) { 1107 fc_rport_error_retry(rdata, -FC_EX_XMIT_ERR); 1108 kref_put(&rdata->kref, fc_rport_destroy); 1109 } 1110 } 1111 1112 /** 1113 * fc_rport_prli_resp() - Process Login (PRLI) response handler 1114 * @sp: The sequence the PRLI response was on 1115 * @fp: The PRLI response frame 1116 * @rdata_arg: The remote port that sent the PRLI response 1117 * 1118 * Locking Note: This function will be called without the rport lock 1119 * held, but it will lock, call an _enter_* function or fc_rport_error 1120 * and then unlock the rport. 1121 */ 1122 static void fc_rport_prli_resp(struct fc_seq *sp, struct fc_frame *fp, 1123 void *rdata_arg) 1124 { 1125 struct fc_rport_priv *rdata = rdata_arg; 1126 struct { 1127 struct fc_els_prli prli; 1128 struct fc_els_spp spp; 1129 } *pp; 1130 struct fc_els_spp temp_spp; 1131 struct fc_els_ls_rjt *rjt; 1132 struct fc4_prov *prov; 1133 u32 roles = FC_RPORT_ROLE_UNKNOWN; 1134 u32 fcp_parm = 0; 1135 u8 op; 1136 enum fc_els_spp_resp resp_code; 1137 1138 FC_RPORT_DBG(rdata, "Received a PRLI %s\n", fc_els_resp_type(fp)); 1139 1140 if (fp == ERR_PTR(-FC_EX_CLOSED)) 1141 goto put; 1142 1143 mutex_lock(&rdata->rp_mutex); 1144 1145 if (rdata->rp_state != RPORT_ST_PRLI) { 1146 FC_RPORT_DBG(rdata, "Received a PRLI response, but in state " 1147 "%s\n", fc_rport_state(rdata)); 1148 if (IS_ERR(fp)) 1149 goto err; 1150 goto out; 1151 } 1152 1153 if (IS_ERR(fp)) { 1154 fc_rport_error_retry(rdata, PTR_ERR(fp)); 1155 goto err; 1156 } 1157 1158 /* reinitialize remote port roles */ 1159 rdata->ids.roles = FC_RPORT_ROLE_UNKNOWN; 1160 1161 op = fc_frame_payload_op(fp); 1162 if (op == ELS_LS_ACC) { 1163 pp = fc_frame_payload_get(fp, sizeof(*pp)); 1164 if (!pp) { 1165 fc_rport_error_retry(rdata, -FC_EX_SEQ_ERR); 1166 goto out; 1167 } 1168 1169 resp_code = (pp->spp.spp_flags & FC_SPP_RESP_MASK); 1170 FC_RPORT_DBG(rdata, "PRLI spp_flags = 0x%x spp_type 0x%x\n", 1171 pp->spp.spp_flags, pp->spp.spp_type); 1172 rdata->spp_type = pp->spp.spp_type; 1173 if (resp_code != FC_SPP_RESP_ACK) { 1174 if (resp_code == FC_SPP_RESP_CONF) 1175 fc_rport_error(rdata, -FC_EX_SEQ_ERR); 1176 else 1177 fc_rport_error_retry(rdata, -FC_EX_SEQ_ERR); 1178 goto out; 1179 } 1180 if (pp->prli.prli_spp_len < sizeof(pp->spp)) { 1181 fc_rport_error_retry(rdata, -FC_EX_SEQ_ERR); 1182 goto out; 1183 } 1184 1185 fcp_parm = ntohl(pp->spp.spp_params); 1186 if (fcp_parm & FCP_SPPF_RETRY) 1187 rdata->flags |= FC_RP_FLAGS_RETRY; 1188 if (fcp_parm & FCP_SPPF_CONF_COMPL) 1189 rdata->flags |= FC_RP_FLAGS_CONF_REQ; 1190 1191 /* 1192 * Call prli provider if we should act as a target 1193 */ 1194 prov = fc_passive_prov[rdata->spp_type]; 1195 if (prov) { 1196 memset(&temp_spp, 0, sizeof(temp_spp)); 1197 prov->prli(rdata, pp->prli.prli_spp_len, 1198 &pp->spp, &temp_spp); 1199 } 1200 /* 1201 * Check if the image pair could be established 1202 */ 1203 if (rdata->spp_type != FC_TYPE_FCP || 1204 !(pp->spp.spp_flags & FC_SPP_EST_IMG_PAIR)) { 1205 /* 1206 * Nope; we can't use this port as a target. 1207 */ 1208 fcp_parm &= ~FCP_SPPF_TARG_FCN; 1209 } 1210 rdata->supported_classes = FC_COS_CLASS3; 1211 if (fcp_parm & FCP_SPPF_INIT_FCN) 1212 roles |= FC_RPORT_ROLE_FCP_INITIATOR; 1213 if (fcp_parm & FCP_SPPF_TARG_FCN) 1214 roles |= FC_RPORT_ROLE_FCP_TARGET; 1215 1216 rdata->ids.roles = roles; 1217 fc_rport_enter_rtv(rdata); 1218 1219 } else { 1220 rjt = fc_frame_payload_get(fp, sizeof(*rjt)); 1221 if (!rjt) 1222 FC_RPORT_DBG(rdata, "PRLI bad response\n"); 1223 else 1224 FC_RPORT_DBG(rdata, "PRLI ELS rejected, reason %x expl %x\n", 1225 rjt->er_reason, rjt->er_explan); 1226 fc_rport_error_retry(rdata, FC_EX_ELS_RJT); 1227 } 1228 1229 out: 1230 fc_frame_free(fp); 1231 err: 1232 mutex_unlock(&rdata->rp_mutex); 1233 put: 1234 kref_put(&rdata->kref, fc_rport_destroy); 1235 } 1236 1237 /** 1238 * fc_rport_enter_prli() - Send Process Login (PRLI) request 1239 * @rdata: The remote port to send the PRLI request to 1240 * 1241 * Reference counting: increments kref when sending ELS 1242 */ 1243 static void fc_rport_enter_prli(struct fc_rport_priv *rdata) 1244 { 1245 struct fc_lport *lport = rdata->local_port; 1246 struct { 1247 struct fc_els_prli prli; 1248 struct fc_els_spp spp; 1249 } *pp; 1250 struct fc_frame *fp; 1251 struct fc4_prov *prov; 1252 1253 lockdep_assert_held(&rdata->rp_mutex); 1254 1255 /* 1256 * If the rport is one of the well known addresses 1257 * we skip PRLI and RTV and go straight to READY. 1258 */ 1259 if (rdata->ids.port_id >= FC_FID_DOM_MGR) { 1260 fc_rport_enter_ready(rdata); 1261 return; 1262 } 1263 1264 /* 1265 * And if the local port does not support the initiator function 1266 * there's no need to send a PRLI, either. 1267 */ 1268 if (!(lport->service_params & FCP_SPPF_INIT_FCN)) { 1269 fc_rport_enter_ready(rdata); 1270 return; 1271 } 1272 1273 FC_RPORT_DBG(rdata, "Port entered PRLI state from %s state\n", 1274 fc_rport_state(rdata)); 1275 1276 fc_rport_state_enter(rdata, RPORT_ST_PRLI); 1277 1278 fp = fc_frame_alloc(lport, sizeof(*pp)); 1279 if (!fp) { 1280 fc_rport_error_retry(rdata, -FC_EX_ALLOC_ERR); 1281 return; 1282 } 1283 1284 fc_prli_fill(lport, fp); 1285 1286 prov = fc_passive_prov[FC_TYPE_FCP]; 1287 if (prov) { 1288 pp = fc_frame_payload_get(fp, sizeof(*pp)); 1289 prov->prli(rdata, sizeof(pp->spp), NULL, &pp->spp); 1290 } 1291 1292 fc_fill_fc_hdr(fp, FC_RCTL_ELS_REQ, rdata->ids.port_id, 1293 fc_host_port_id(lport->host), FC_TYPE_ELS, 1294 FC_FC_FIRST_SEQ | FC_FC_END_SEQ | FC_FC_SEQ_INIT, 0); 1295 1296 kref_get(&rdata->kref); 1297 if (!fc_exch_seq_send(lport, fp, fc_rport_prli_resp, 1298 NULL, rdata, 2 * lport->r_a_tov)) { 1299 fc_rport_error_retry(rdata, -FC_EX_XMIT_ERR); 1300 kref_put(&rdata->kref, fc_rport_destroy); 1301 } 1302 } 1303 1304 /** 1305 * fc_rport_rtv_resp() - Handler for Request Timeout Value (RTV) responses 1306 * @sp: The sequence the RTV was on 1307 * @fp: The RTV response frame 1308 * @rdata_arg: The remote port that sent the RTV response 1309 * 1310 * Many targets don't seem to support this. 1311 * 1312 * Locking Note: This function will be called without the rport lock 1313 * held, but it will lock, call an _enter_* function or fc_rport_error 1314 * and then unlock the rport. 1315 */ 1316 static void fc_rport_rtv_resp(struct fc_seq *sp, struct fc_frame *fp, 1317 void *rdata_arg) 1318 { 1319 struct fc_rport_priv *rdata = rdata_arg; 1320 u8 op; 1321 1322 FC_RPORT_DBG(rdata, "Received a RTV %s\n", fc_els_resp_type(fp)); 1323 1324 if (fp == ERR_PTR(-FC_EX_CLOSED)) 1325 goto put; 1326 1327 mutex_lock(&rdata->rp_mutex); 1328 1329 if (rdata->rp_state != RPORT_ST_RTV) { 1330 FC_RPORT_DBG(rdata, "Received a RTV response, but in state " 1331 "%s\n", fc_rport_state(rdata)); 1332 if (IS_ERR(fp)) 1333 goto err; 1334 goto out; 1335 } 1336 1337 if (IS_ERR(fp)) { 1338 fc_rport_error(rdata, PTR_ERR(fp)); 1339 goto err; 1340 } 1341 1342 op = fc_frame_payload_op(fp); 1343 if (op == ELS_LS_ACC) { 1344 struct fc_els_rtv_acc *rtv; 1345 u32 toq; 1346 u32 tov; 1347 1348 rtv = fc_frame_payload_get(fp, sizeof(*rtv)); 1349 if (rtv) { 1350 toq = ntohl(rtv->rtv_toq); 1351 tov = ntohl(rtv->rtv_r_a_tov); 1352 if (tov == 0) 1353 tov = 1; 1354 if (tov > rdata->r_a_tov) 1355 rdata->r_a_tov = tov; 1356 tov = ntohl(rtv->rtv_e_d_tov); 1357 if (toq & FC_ELS_RTV_EDRES) 1358 tov /= 1000000; 1359 if (tov == 0) 1360 tov = 1; 1361 if (tov > rdata->e_d_tov) 1362 rdata->e_d_tov = tov; 1363 } 1364 } 1365 1366 fc_rport_enter_ready(rdata); 1367 1368 out: 1369 fc_frame_free(fp); 1370 err: 1371 mutex_unlock(&rdata->rp_mutex); 1372 put: 1373 kref_put(&rdata->kref, fc_rport_destroy); 1374 } 1375 1376 /** 1377 * fc_rport_enter_rtv() - Send Request Timeout Value (RTV) request 1378 * @rdata: The remote port to send the RTV request to 1379 * 1380 * Reference counting: increments kref when sending ELS 1381 */ 1382 static void fc_rport_enter_rtv(struct fc_rport_priv *rdata) 1383 { 1384 struct fc_frame *fp; 1385 struct fc_lport *lport = rdata->local_port; 1386 1387 lockdep_assert_held(&rdata->rp_mutex); 1388 1389 FC_RPORT_DBG(rdata, "Port entered RTV state from %s state\n", 1390 fc_rport_state(rdata)); 1391 1392 fc_rport_state_enter(rdata, RPORT_ST_RTV); 1393 1394 fp = fc_frame_alloc(lport, sizeof(struct fc_els_rtv)); 1395 if (!fp) { 1396 fc_rport_error_retry(rdata, -FC_EX_ALLOC_ERR); 1397 return; 1398 } 1399 1400 kref_get(&rdata->kref); 1401 if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_RTV, 1402 fc_rport_rtv_resp, rdata, 1403 2 * lport->r_a_tov)) { 1404 fc_rport_error_retry(rdata, -FC_EX_XMIT_ERR); 1405 kref_put(&rdata->kref, fc_rport_destroy); 1406 } 1407 } 1408 1409 /** 1410 * fc_rport_recv_rtv_req() - Handler for Read Timeout Value (RTV) requests 1411 * @rdata: The remote port that sent the RTV request 1412 * @in_fp: The RTV request frame 1413 */ 1414 static void fc_rport_recv_rtv_req(struct fc_rport_priv *rdata, 1415 struct fc_frame *in_fp) 1416 { 1417 struct fc_lport *lport = rdata->local_port; 1418 struct fc_frame *fp; 1419 struct fc_els_rtv_acc *rtv; 1420 struct fc_seq_els_data rjt_data; 1421 1422 lockdep_assert_held(&rdata->rp_mutex); 1423 lockdep_assert_held(&lport->lp_mutex); 1424 1425 FC_RPORT_DBG(rdata, "Received RTV request\n"); 1426 1427 fp = fc_frame_alloc(lport, sizeof(*rtv)); 1428 if (!fp) { 1429 rjt_data.reason = ELS_RJT_UNAB; 1430 rjt_data.explan = ELS_EXPL_INSUF_RES; 1431 fc_seq_els_rsp_send(in_fp, ELS_LS_RJT, &rjt_data); 1432 goto drop; 1433 } 1434 rtv = fc_frame_payload_get(fp, sizeof(*rtv)); 1435 rtv->rtv_cmd = ELS_LS_ACC; 1436 rtv->rtv_r_a_tov = htonl(lport->r_a_tov); 1437 rtv->rtv_e_d_tov = htonl(lport->e_d_tov); 1438 rtv->rtv_toq = 0; 1439 fc_fill_reply_hdr(fp, in_fp, FC_RCTL_ELS_REP, 0); 1440 lport->tt.frame_send(lport, fp); 1441 drop: 1442 fc_frame_free(in_fp); 1443 } 1444 1445 /** 1446 * fc_rport_logo_resp() - Handler for logout (LOGO) responses 1447 * @sp: The sequence the LOGO was on 1448 * @fp: The LOGO response frame 1449 * @lport_arg: The local port 1450 */ 1451 static void fc_rport_logo_resp(struct fc_seq *sp, struct fc_frame *fp, 1452 void *rdata_arg) 1453 { 1454 struct fc_rport_priv *rdata = rdata_arg; 1455 struct fc_lport *lport = rdata->local_port; 1456 1457 FC_RPORT_ID_DBG(lport, fc_seq_exch(sp)->did, 1458 "Received a LOGO %s\n", fc_els_resp_type(fp)); 1459 if (!IS_ERR(fp)) 1460 fc_frame_free(fp); 1461 kref_put(&rdata->kref, fc_rport_destroy); 1462 } 1463 1464 /** 1465 * fc_rport_enter_logo() - Send a logout (LOGO) request 1466 * @rdata: The remote port to send the LOGO request to 1467 * 1468 * Reference counting: increments kref when sending ELS 1469 */ 1470 static void fc_rport_enter_logo(struct fc_rport_priv *rdata) 1471 { 1472 struct fc_lport *lport = rdata->local_port; 1473 struct fc_frame *fp; 1474 1475 lockdep_assert_held(&rdata->rp_mutex); 1476 1477 FC_RPORT_DBG(rdata, "Port sending LOGO from %s state\n", 1478 fc_rport_state(rdata)); 1479 1480 fp = fc_frame_alloc(lport, sizeof(struct fc_els_logo)); 1481 if (!fp) 1482 return; 1483 kref_get(&rdata->kref); 1484 if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_LOGO, 1485 fc_rport_logo_resp, rdata, 0)) 1486 kref_put(&rdata->kref, fc_rport_destroy); 1487 } 1488 1489 /** 1490 * fc_rport_els_adisc_resp() - Handler for Address Discovery (ADISC) responses 1491 * @sp: The sequence the ADISC response was on 1492 * @fp: The ADISC response frame 1493 * @rdata_arg: The remote port that sent the ADISC response 1494 * 1495 * Locking Note: This function will be called without the rport lock 1496 * held, but it will lock, call an _enter_* function or fc_rport_error 1497 * and then unlock the rport. 1498 */ 1499 static void fc_rport_adisc_resp(struct fc_seq *sp, struct fc_frame *fp, 1500 void *rdata_arg) 1501 { 1502 struct fc_rport_priv *rdata = rdata_arg; 1503 struct fc_els_adisc *adisc; 1504 u8 op; 1505 1506 FC_RPORT_DBG(rdata, "Received a ADISC response\n"); 1507 1508 if (fp == ERR_PTR(-FC_EX_CLOSED)) 1509 goto put; 1510 1511 mutex_lock(&rdata->rp_mutex); 1512 1513 if (rdata->rp_state != RPORT_ST_ADISC) { 1514 FC_RPORT_DBG(rdata, "Received a ADISC resp but in state %s\n", 1515 fc_rport_state(rdata)); 1516 if (IS_ERR(fp)) 1517 goto err; 1518 goto out; 1519 } 1520 1521 if (IS_ERR(fp)) { 1522 fc_rport_error(rdata, PTR_ERR(fp)); 1523 goto err; 1524 } 1525 1526 /* 1527 * If address verification failed. Consider us logged out of the rport. 1528 * Since the rport is still in discovery, we want to be 1529 * logged in, so go to PLOGI state. Otherwise, go back to READY. 1530 */ 1531 op = fc_frame_payload_op(fp); 1532 adisc = fc_frame_payload_get(fp, sizeof(*adisc)); 1533 if (op != ELS_LS_ACC || !adisc || 1534 ntoh24(adisc->adisc_port_id) != rdata->ids.port_id || 1535 get_unaligned_be64(&adisc->adisc_wwpn) != rdata->ids.port_name || 1536 get_unaligned_be64(&adisc->adisc_wwnn) != rdata->ids.node_name) { 1537 FC_RPORT_DBG(rdata, "ADISC error or mismatch\n"); 1538 fc_rport_enter_flogi(rdata); 1539 } else { 1540 FC_RPORT_DBG(rdata, "ADISC OK\n"); 1541 fc_rport_enter_ready(rdata); 1542 } 1543 out: 1544 fc_frame_free(fp); 1545 err: 1546 mutex_unlock(&rdata->rp_mutex); 1547 put: 1548 kref_put(&rdata->kref, fc_rport_destroy); 1549 } 1550 1551 /** 1552 * fc_rport_enter_adisc() - Send Address Discover (ADISC) request 1553 * @rdata: The remote port to send the ADISC request to 1554 * 1555 * Reference counting: increments kref when sending ELS 1556 */ 1557 static void fc_rport_enter_adisc(struct fc_rport_priv *rdata) 1558 { 1559 struct fc_lport *lport = rdata->local_port; 1560 struct fc_frame *fp; 1561 1562 lockdep_assert_held(&rdata->rp_mutex); 1563 1564 FC_RPORT_DBG(rdata, "sending ADISC from %s state\n", 1565 fc_rport_state(rdata)); 1566 1567 fc_rport_state_enter(rdata, RPORT_ST_ADISC); 1568 1569 fp = fc_frame_alloc(lport, sizeof(struct fc_els_adisc)); 1570 if (!fp) { 1571 fc_rport_error_retry(rdata, -FC_EX_ALLOC_ERR); 1572 return; 1573 } 1574 kref_get(&rdata->kref); 1575 if (!lport->tt.elsct_send(lport, rdata->ids.port_id, fp, ELS_ADISC, 1576 fc_rport_adisc_resp, rdata, 1577 2 * lport->r_a_tov)) { 1578 fc_rport_error_retry(rdata, -FC_EX_XMIT_ERR); 1579 kref_put(&rdata->kref, fc_rport_destroy); 1580 } 1581 } 1582 1583 /** 1584 * fc_rport_recv_adisc_req() - Handler for Address Discovery (ADISC) requests 1585 * @rdata: The remote port that sent the ADISC request 1586 * @in_fp: The ADISC request frame 1587 */ 1588 static void fc_rport_recv_adisc_req(struct fc_rport_priv *rdata, 1589 struct fc_frame *in_fp) 1590 { 1591 struct fc_lport *lport = rdata->local_port; 1592 struct fc_frame *fp; 1593 struct fc_els_adisc *adisc; 1594 struct fc_seq_els_data rjt_data; 1595 1596 lockdep_assert_held(&rdata->rp_mutex); 1597 lockdep_assert_held(&lport->lp_mutex); 1598 1599 FC_RPORT_DBG(rdata, "Received ADISC request\n"); 1600 1601 adisc = fc_frame_payload_get(in_fp, sizeof(*adisc)); 1602 if (!adisc) { 1603 rjt_data.reason = ELS_RJT_PROT; 1604 rjt_data.explan = ELS_EXPL_INV_LEN; 1605 fc_seq_els_rsp_send(in_fp, ELS_LS_RJT, &rjt_data); 1606 goto drop; 1607 } 1608 1609 fp = fc_frame_alloc(lport, sizeof(*adisc)); 1610 if (!fp) 1611 goto drop; 1612 fc_adisc_fill(lport, fp); 1613 adisc = fc_frame_payload_get(fp, sizeof(*adisc)); 1614 adisc->adisc_cmd = ELS_LS_ACC; 1615 fc_fill_reply_hdr(fp, in_fp, FC_RCTL_ELS_REP, 0); 1616 lport->tt.frame_send(lport, fp); 1617 drop: 1618 fc_frame_free(in_fp); 1619 } 1620 1621 /** 1622 * fc_rport_recv_rls_req() - Handle received Read Link Status request 1623 * @rdata: The remote port that sent the RLS request 1624 * @rx_fp: The PRLI request frame 1625 */ 1626 static void fc_rport_recv_rls_req(struct fc_rport_priv *rdata, 1627 struct fc_frame *rx_fp) 1628 1629 { 1630 struct fc_lport *lport = rdata->local_port; 1631 struct fc_frame *fp; 1632 struct fc_els_rls *rls; 1633 struct fc_els_rls_resp *rsp; 1634 struct fc_els_lesb *lesb; 1635 struct fc_seq_els_data rjt_data; 1636 struct fc_host_statistics *hst; 1637 1638 lockdep_assert_held(&rdata->rp_mutex); 1639 1640 FC_RPORT_DBG(rdata, "Received RLS request while in state %s\n", 1641 fc_rport_state(rdata)); 1642 1643 rls = fc_frame_payload_get(rx_fp, sizeof(*rls)); 1644 if (!rls) { 1645 rjt_data.reason = ELS_RJT_PROT; 1646 rjt_data.explan = ELS_EXPL_INV_LEN; 1647 goto out_rjt; 1648 } 1649 1650 fp = fc_frame_alloc(lport, sizeof(*rsp)); 1651 if (!fp) { 1652 rjt_data.reason = ELS_RJT_UNAB; 1653 rjt_data.explan = ELS_EXPL_INSUF_RES; 1654 goto out_rjt; 1655 } 1656 1657 rsp = fc_frame_payload_get(fp, sizeof(*rsp)); 1658 memset(rsp, 0, sizeof(*rsp)); 1659 rsp->rls_cmd = ELS_LS_ACC; 1660 lesb = &rsp->rls_lesb; 1661 if (lport->tt.get_lesb) { 1662 /* get LESB from LLD if it supports it */ 1663 lport->tt.get_lesb(lport, lesb); 1664 } else { 1665 fc_get_host_stats(lport->host); 1666 hst = &lport->host_stats; 1667 lesb->lesb_link_fail = htonl(hst->link_failure_count); 1668 lesb->lesb_sync_loss = htonl(hst->loss_of_sync_count); 1669 lesb->lesb_sig_loss = htonl(hst->loss_of_signal_count); 1670 lesb->lesb_prim_err = htonl(hst->prim_seq_protocol_err_count); 1671 lesb->lesb_inv_word = htonl(hst->invalid_tx_word_count); 1672 lesb->lesb_inv_crc = htonl(hst->invalid_crc_count); 1673 } 1674 1675 fc_fill_reply_hdr(fp, rx_fp, FC_RCTL_ELS_REP, 0); 1676 lport->tt.frame_send(lport, fp); 1677 goto out; 1678 1679 out_rjt: 1680 fc_seq_els_rsp_send(rx_fp, ELS_LS_RJT, &rjt_data); 1681 out: 1682 fc_frame_free(rx_fp); 1683 } 1684 1685 /** 1686 * fc_rport_recv_els_req() - Handler for validated ELS requests 1687 * @lport: The local port that received the ELS request 1688 * @fp: The ELS request frame 1689 * 1690 * Handle incoming ELS requests that require port login. 1691 * The ELS opcode has already been validated by the caller. 1692 * 1693 * Reference counting: does not modify kref 1694 */ 1695 static void fc_rport_recv_els_req(struct fc_lport *lport, struct fc_frame *fp) 1696 { 1697 struct fc_rport_priv *rdata; 1698 struct fc_seq_els_data els_data; 1699 1700 lockdep_assert_held(&lport->lp_mutex); 1701 1702 rdata = fc_rport_lookup(lport, fc_frame_sid(fp)); 1703 if (!rdata) { 1704 FC_RPORT_ID_DBG(lport, fc_frame_sid(fp), 1705 "Received ELS 0x%02x from non-logged-in port\n", 1706 fc_frame_payload_op(fp)); 1707 goto reject; 1708 } 1709 1710 mutex_lock(&rdata->rp_mutex); 1711 1712 switch (rdata->rp_state) { 1713 case RPORT_ST_PRLI: 1714 case RPORT_ST_RTV: 1715 case RPORT_ST_READY: 1716 case RPORT_ST_ADISC: 1717 break; 1718 case RPORT_ST_PLOGI: 1719 if (fc_frame_payload_op(fp) == ELS_PRLI) { 1720 FC_RPORT_DBG(rdata, "Reject ELS PRLI " 1721 "while in state %s\n", 1722 fc_rport_state(rdata)); 1723 mutex_unlock(&rdata->rp_mutex); 1724 kref_put(&rdata->kref, fc_rport_destroy); 1725 goto busy; 1726 } 1727 default: 1728 FC_RPORT_DBG(rdata, 1729 "Reject ELS 0x%02x while in state %s\n", 1730 fc_frame_payload_op(fp), fc_rport_state(rdata)); 1731 mutex_unlock(&rdata->rp_mutex); 1732 kref_put(&rdata->kref, fc_rport_destroy); 1733 goto reject; 1734 } 1735 1736 switch (fc_frame_payload_op(fp)) { 1737 case ELS_PRLI: 1738 fc_rport_recv_prli_req(rdata, fp); 1739 break; 1740 case ELS_PRLO: 1741 fc_rport_recv_prlo_req(rdata, fp); 1742 break; 1743 case ELS_ADISC: 1744 fc_rport_recv_adisc_req(rdata, fp); 1745 break; 1746 case ELS_RRQ: 1747 fc_seq_els_rsp_send(fp, ELS_RRQ, NULL); 1748 fc_frame_free(fp); 1749 break; 1750 case ELS_REC: 1751 fc_seq_els_rsp_send(fp, ELS_REC, NULL); 1752 fc_frame_free(fp); 1753 break; 1754 case ELS_RLS: 1755 fc_rport_recv_rls_req(rdata, fp); 1756 break; 1757 case ELS_RTV: 1758 fc_rport_recv_rtv_req(rdata, fp); 1759 break; 1760 default: 1761 fc_frame_free(fp); /* can't happen */ 1762 break; 1763 } 1764 1765 mutex_unlock(&rdata->rp_mutex); 1766 kref_put(&rdata->kref, fc_rport_destroy); 1767 return; 1768 1769 reject: 1770 els_data.reason = ELS_RJT_UNAB; 1771 els_data.explan = ELS_EXPL_PLOGI_REQD; 1772 fc_seq_els_rsp_send(fp, ELS_LS_RJT, &els_data); 1773 fc_frame_free(fp); 1774 return; 1775 1776 busy: 1777 els_data.reason = ELS_RJT_BUSY; 1778 els_data.explan = ELS_EXPL_NONE; 1779 fc_seq_els_rsp_send(fp, ELS_LS_RJT, &els_data); 1780 fc_frame_free(fp); 1781 return; 1782 } 1783 1784 /** 1785 * fc_rport_recv_req() - Handler for requests 1786 * @lport: The local port that received the request 1787 * @fp: The request frame 1788 * 1789 * Reference counting: does not modify kref 1790 */ 1791 void fc_rport_recv_req(struct fc_lport *lport, struct fc_frame *fp) 1792 { 1793 struct fc_seq_els_data els_data; 1794 1795 lockdep_assert_held(&lport->lp_mutex); 1796 1797 /* 1798 * Handle FLOGI, PLOGI and LOGO requests separately, since they 1799 * don't require prior login. 1800 * Check for unsupported opcodes first and reject them. 1801 * For some ops, it would be incorrect to reject with "PLOGI required". 1802 */ 1803 switch (fc_frame_payload_op(fp)) { 1804 case ELS_FLOGI: 1805 fc_rport_recv_flogi_req(lport, fp); 1806 break; 1807 case ELS_PLOGI: 1808 fc_rport_recv_plogi_req(lport, fp); 1809 break; 1810 case ELS_LOGO: 1811 fc_rport_recv_logo_req(lport, fp); 1812 break; 1813 case ELS_PRLI: 1814 case ELS_PRLO: 1815 case ELS_ADISC: 1816 case ELS_RRQ: 1817 case ELS_REC: 1818 case ELS_RLS: 1819 case ELS_RTV: 1820 fc_rport_recv_els_req(lport, fp); 1821 break; 1822 default: 1823 els_data.reason = ELS_RJT_UNSUP; 1824 els_data.explan = ELS_EXPL_NONE; 1825 fc_seq_els_rsp_send(fp, ELS_LS_RJT, &els_data); 1826 fc_frame_free(fp); 1827 break; 1828 } 1829 } 1830 EXPORT_SYMBOL(fc_rport_recv_req); 1831 1832 /** 1833 * fc_rport_recv_plogi_req() - Handler for Port Login (PLOGI) requests 1834 * @lport: The local port that received the PLOGI request 1835 * @rx_fp: The PLOGI request frame 1836 * 1837 * Reference counting: increments kref on return 1838 */ 1839 static void fc_rport_recv_plogi_req(struct fc_lport *lport, 1840 struct fc_frame *rx_fp) 1841 { 1842 struct fc_disc *disc; 1843 struct fc_rport_priv *rdata; 1844 struct fc_frame *fp = rx_fp; 1845 struct fc_els_flogi *pl; 1846 struct fc_seq_els_data rjt_data; 1847 u32 sid; 1848 1849 lockdep_assert_held(&lport->lp_mutex); 1850 1851 sid = fc_frame_sid(fp); 1852 1853 FC_RPORT_ID_DBG(lport, sid, "Received PLOGI request\n"); 1854 1855 pl = fc_frame_payload_get(fp, sizeof(*pl)); 1856 if (!pl) { 1857 FC_RPORT_ID_DBG(lport, sid, "Received PLOGI too short\n"); 1858 rjt_data.reason = ELS_RJT_PROT; 1859 rjt_data.explan = ELS_EXPL_INV_LEN; 1860 goto reject; 1861 } 1862 1863 disc = &lport->disc; 1864 mutex_lock(&disc->disc_mutex); 1865 rdata = fc_rport_create(lport, sid); 1866 if (!rdata) { 1867 mutex_unlock(&disc->disc_mutex); 1868 rjt_data.reason = ELS_RJT_UNAB; 1869 rjt_data.explan = ELS_EXPL_INSUF_RES; 1870 goto reject; 1871 } 1872 1873 mutex_lock(&rdata->rp_mutex); 1874 mutex_unlock(&disc->disc_mutex); 1875 1876 rdata->ids.port_name = get_unaligned_be64(&pl->fl_wwpn); 1877 rdata->ids.node_name = get_unaligned_be64(&pl->fl_wwnn); 1878 1879 /* 1880 * If the rport was just created, possibly due to the incoming PLOGI, 1881 * set the state appropriately and accept the PLOGI. 1882 * 1883 * If we had also sent a PLOGI, and if the received PLOGI is from a 1884 * higher WWPN, we accept it, otherwise an LS_RJT is sent with reason 1885 * "command already in progress". 1886 * 1887 * XXX TBD: If the session was ready before, the PLOGI should result in 1888 * all outstanding exchanges being reset. 1889 */ 1890 switch (rdata->rp_state) { 1891 case RPORT_ST_INIT: 1892 FC_RPORT_DBG(rdata, "Received PLOGI in INIT state\n"); 1893 break; 1894 case RPORT_ST_PLOGI_WAIT: 1895 FC_RPORT_DBG(rdata, "Received PLOGI in PLOGI_WAIT state\n"); 1896 break; 1897 case RPORT_ST_PLOGI: 1898 FC_RPORT_DBG(rdata, "Received PLOGI in PLOGI state\n"); 1899 if (rdata->ids.port_name < lport->wwpn) { 1900 mutex_unlock(&rdata->rp_mutex); 1901 rjt_data.reason = ELS_RJT_INPROG; 1902 rjt_data.explan = ELS_EXPL_NONE; 1903 goto reject; 1904 } 1905 break; 1906 case RPORT_ST_PRLI: 1907 case RPORT_ST_RTV: 1908 case RPORT_ST_READY: 1909 case RPORT_ST_ADISC: 1910 FC_RPORT_DBG(rdata, "Received PLOGI in logged-in state %d " 1911 "- ignored for now\n", rdata->rp_state); 1912 /* XXX TBD - should reset */ 1913 break; 1914 case RPORT_ST_FLOGI: 1915 case RPORT_ST_DELETE: 1916 FC_RPORT_DBG(rdata, "Received PLOGI in state %s - send busy\n", 1917 fc_rport_state(rdata)); 1918 mutex_unlock(&rdata->rp_mutex); 1919 rjt_data.reason = ELS_RJT_BUSY; 1920 rjt_data.explan = ELS_EXPL_NONE; 1921 goto reject; 1922 } 1923 if (!fc_rport_compatible_roles(lport, rdata)) { 1924 FC_RPORT_DBG(rdata, "Received PLOGI for incompatible role\n"); 1925 mutex_unlock(&rdata->rp_mutex); 1926 rjt_data.reason = ELS_RJT_LOGIC; 1927 rjt_data.explan = ELS_EXPL_NONE; 1928 goto reject; 1929 } 1930 1931 /* 1932 * Get session payload size from incoming PLOGI. 1933 */ 1934 rdata->maxframe_size = fc_plogi_get_maxframe(pl, lport->mfs); 1935 1936 /* 1937 * Send LS_ACC. If this fails, the originator should retry. 1938 */ 1939 fp = fc_frame_alloc(lport, sizeof(*pl)); 1940 if (!fp) 1941 goto out; 1942 1943 fc_plogi_fill(lport, fp, ELS_LS_ACC); 1944 fc_fill_reply_hdr(fp, rx_fp, FC_RCTL_ELS_REP, 0); 1945 lport->tt.frame_send(lport, fp); 1946 fc_rport_enter_prli(rdata); 1947 out: 1948 mutex_unlock(&rdata->rp_mutex); 1949 fc_frame_free(rx_fp); 1950 return; 1951 1952 reject: 1953 fc_seq_els_rsp_send(fp, ELS_LS_RJT, &rjt_data); 1954 fc_frame_free(fp); 1955 } 1956 1957 /** 1958 * fc_rport_recv_prli_req() - Handler for process login (PRLI) requests 1959 * @rdata: The remote port that sent the PRLI request 1960 * @rx_fp: The PRLI request frame 1961 */ 1962 static void fc_rport_recv_prli_req(struct fc_rport_priv *rdata, 1963 struct fc_frame *rx_fp) 1964 { 1965 struct fc_lport *lport = rdata->local_port; 1966 struct fc_frame *fp; 1967 struct { 1968 struct fc_els_prli prli; 1969 struct fc_els_spp spp; 1970 } *pp; 1971 struct fc_els_spp *rspp; /* request service param page */ 1972 struct fc_els_spp *spp; /* response spp */ 1973 unsigned int len; 1974 unsigned int plen; 1975 enum fc_els_spp_resp resp; 1976 struct fc_seq_els_data rjt_data; 1977 struct fc4_prov *prov; 1978 1979 lockdep_assert_held(&rdata->rp_mutex); 1980 1981 FC_RPORT_DBG(rdata, "Received PRLI request while in state %s\n", 1982 fc_rport_state(rdata)); 1983 1984 len = fr_len(rx_fp) - sizeof(struct fc_frame_header); 1985 pp = fc_frame_payload_get(rx_fp, sizeof(*pp)); 1986 if (!pp) 1987 goto reject_len; 1988 plen = ntohs(pp->prli.prli_len); 1989 if ((plen % 4) != 0 || plen > len || plen < 16) 1990 goto reject_len; 1991 if (plen < len) 1992 len = plen; 1993 plen = pp->prli.prli_spp_len; 1994 if ((plen % 4) != 0 || plen < sizeof(*spp) || 1995 plen > len || len < sizeof(*pp) || plen < 12) 1996 goto reject_len; 1997 rspp = &pp->spp; 1998 1999 fp = fc_frame_alloc(lport, len); 2000 if (!fp) { 2001 rjt_data.reason = ELS_RJT_UNAB; 2002 rjt_data.explan = ELS_EXPL_INSUF_RES; 2003 goto reject; 2004 } 2005 pp = fc_frame_payload_get(fp, len); 2006 WARN_ON(!pp); 2007 memset(pp, 0, len); 2008 pp->prli.prli_cmd = ELS_LS_ACC; 2009 pp->prli.prli_spp_len = plen; 2010 pp->prli.prli_len = htons(len); 2011 len -= sizeof(struct fc_els_prli); 2012 2013 /* 2014 * Go through all the service parameter pages and build 2015 * response. If plen indicates longer SPP than standard, 2016 * use that. The entire response has been pre-cleared above. 2017 */ 2018 spp = &pp->spp; 2019 mutex_lock(&fc_prov_mutex); 2020 while (len >= plen) { 2021 rdata->spp_type = rspp->spp_type; 2022 spp->spp_type = rspp->spp_type; 2023 spp->spp_type_ext = rspp->spp_type_ext; 2024 resp = 0; 2025 2026 if (rspp->spp_type < FC_FC4_PROV_SIZE) { 2027 enum fc_els_spp_resp active = 0, passive = 0; 2028 2029 prov = fc_active_prov[rspp->spp_type]; 2030 if (prov) 2031 active = prov->prli(rdata, plen, rspp, spp); 2032 prov = fc_passive_prov[rspp->spp_type]; 2033 if (prov) 2034 passive = prov->prli(rdata, plen, rspp, spp); 2035 if (!active || passive == FC_SPP_RESP_ACK) 2036 resp = passive; 2037 else 2038 resp = active; 2039 FC_RPORT_DBG(rdata, "PRLI rspp type %x " 2040 "active %x passive %x\n", 2041 rspp->spp_type, active, passive); 2042 } 2043 if (!resp) { 2044 if (spp->spp_flags & FC_SPP_EST_IMG_PAIR) 2045 resp |= FC_SPP_RESP_CONF; 2046 else 2047 resp |= FC_SPP_RESP_INVL; 2048 } 2049 spp->spp_flags |= resp; 2050 len -= plen; 2051 rspp = (struct fc_els_spp *)((char *)rspp + plen); 2052 spp = (struct fc_els_spp *)((char *)spp + plen); 2053 } 2054 mutex_unlock(&fc_prov_mutex); 2055 2056 /* 2057 * Send LS_ACC. If this fails, the originator should retry. 2058 */ 2059 fc_fill_reply_hdr(fp, rx_fp, FC_RCTL_ELS_REP, 0); 2060 lport->tt.frame_send(lport, fp); 2061 2062 goto drop; 2063 2064 reject_len: 2065 rjt_data.reason = ELS_RJT_PROT; 2066 rjt_data.explan = ELS_EXPL_INV_LEN; 2067 reject: 2068 fc_seq_els_rsp_send(rx_fp, ELS_LS_RJT, &rjt_data); 2069 drop: 2070 fc_frame_free(rx_fp); 2071 } 2072 2073 /** 2074 * fc_rport_recv_prlo_req() - Handler for process logout (PRLO) requests 2075 * @rdata: The remote port that sent the PRLO request 2076 * @rx_fp: The PRLO request frame 2077 */ 2078 static void fc_rport_recv_prlo_req(struct fc_rport_priv *rdata, 2079 struct fc_frame *rx_fp) 2080 { 2081 struct fc_lport *lport = rdata->local_port; 2082 struct fc_frame *fp; 2083 struct { 2084 struct fc_els_prlo prlo; 2085 struct fc_els_spp spp; 2086 } *pp; 2087 struct fc_els_spp *rspp; /* request service param page */ 2088 struct fc_els_spp *spp; /* response spp */ 2089 unsigned int len; 2090 unsigned int plen; 2091 struct fc_seq_els_data rjt_data; 2092 2093 lockdep_assert_held(&rdata->rp_mutex); 2094 2095 FC_RPORT_DBG(rdata, "Received PRLO request while in state %s\n", 2096 fc_rport_state(rdata)); 2097 2098 len = fr_len(rx_fp) - sizeof(struct fc_frame_header); 2099 pp = fc_frame_payload_get(rx_fp, sizeof(*pp)); 2100 if (!pp) 2101 goto reject_len; 2102 plen = ntohs(pp->prlo.prlo_len); 2103 if (plen != 20) 2104 goto reject_len; 2105 if (plen < len) 2106 len = plen; 2107 2108 rspp = &pp->spp; 2109 2110 fp = fc_frame_alloc(lport, len); 2111 if (!fp) { 2112 rjt_data.reason = ELS_RJT_UNAB; 2113 rjt_data.explan = ELS_EXPL_INSUF_RES; 2114 goto reject; 2115 } 2116 2117 pp = fc_frame_payload_get(fp, len); 2118 WARN_ON(!pp); 2119 memset(pp, 0, len); 2120 pp->prlo.prlo_cmd = ELS_LS_ACC; 2121 pp->prlo.prlo_obs = 0x10; 2122 pp->prlo.prlo_len = htons(len); 2123 spp = &pp->spp; 2124 spp->spp_type = rspp->spp_type; 2125 spp->spp_type_ext = rspp->spp_type_ext; 2126 spp->spp_flags = FC_SPP_RESP_ACK; 2127 2128 fc_rport_enter_prli(rdata); 2129 2130 fc_fill_reply_hdr(fp, rx_fp, FC_RCTL_ELS_REP, 0); 2131 lport->tt.frame_send(lport, fp); 2132 goto drop; 2133 2134 reject_len: 2135 rjt_data.reason = ELS_RJT_PROT; 2136 rjt_data.explan = ELS_EXPL_INV_LEN; 2137 reject: 2138 fc_seq_els_rsp_send(rx_fp, ELS_LS_RJT, &rjt_data); 2139 drop: 2140 fc_frame_free(rx_fp); 2141 } 2142 2143 /** 2144 * fc_rport_recv_logo_req() - Handler for logout (LOGO) requests 2145 * @lport: The local port that received the LOGO request 2146 * @fp: The LOGO request frame 2147 * 2148 * Reference counting: drops kref on return 2149 */ 2150 static void fc_rport_recv_logo_req(struct fc_lport *lport, struct fc_frame *fp) 2151 { 2152 struct fc_rport_priv *rdata; 2153 u32 sid; 2154 2155 lockdep_assert_held(&lport->lp_mutex); 2156 2157 fc_seq_els_rsp_send(fp, ELS_LS_ACC, NULL); 2158 2159 sid = fc_frame_sid(fp); 2160 2161 rdata = fc_rport_lookup(lport, sid); 2162 if (rdata) { 2163 mutex_lock(&rdata->rp_mutex); 2164 FC_RPORT_DBG(rdata, "Received LOGO request while in state %s\n", 2165 fc_rport_state(rdata)); 2166 2167 rdata->flags &= ~FC_RP_STARTED; 2168 fc_rport_enter_delete(rdata, RPORT_EV_STOP); 2169 mutex_unlock(&rdata->rp_mutex); 2170 kref_put(&rdata->kref, fc_rport_destroy); 2171 } else 2172 FC_RPORT_ID_DBG(lport, sid, 2173 "Received LOGO from non-logged-in port\n"); 2174 fc_frame_free(fp); 2175 } 2176 2177 /** 2178 * fc_rport_flush_queue() - Flush the rport_event_queue 2179 */ 2180 void fc_rport_flush_queue(void) 2181 { 2182 flush_workqueue(rport_event_queue); 2183 } 2184 EXPORT_SYMBOL(fc_rport_flush_queue); 2185 2186 /** 2187 * fc_rport_fcp_prli() - Handle incoming PRLI for the FCP initiator. 2188 * @rdata: remote port private 2189 * @spp_len: service parameter page length 2190 * @rspp: received service parameter page 2191 * @spp: response service parameter page 2192 * 2193 * Returns the value for the response code to be placed in spp_flags; 2194 * Returns 0 if not an initiator. 2195 */ 2196 static int fc_rport_fcp_prli(struct fc_rport_priv *rdata, u32 spp_len, 2197 const struct fc_els_spp *rspp, 2198 struct fc_els_spp *spp) 2199 { 2200 struct fc_lport *lport = rdata->local_port; 2201 u32 fcp_parm; 2202 2203 fcp_parm = ntohl(rspp->spp_params); 2204 rdata->ids.roles = FC_RPORT_ROLE_UNKNOWN; 2205 if (fcp_parm & FCP_SPPF_INIT_FCN) 2206 rdata->ids.roles |= FC_RPORT_ROLE_FCP_INITIATOR; 2207 if (fcp_parm & FCP_SPPF_TARG_FCN) 2208 rdata->ids.roles |= FC_RPORT_ROLE_FCP_TARGET; 2209 if (fcp_parm & FCP_SPPF_RETRY) 2210 rdata->flags |= FC_RP_FLAGS_RETRY; 2211 rdata->supported_classes = FC_COS_CLASS3; 2212 2213 if (!(lport->service_params & FCP_SPPF_INIT_FCN)) 2214 return 0; 2215 2216 spp->spp_flags |= rspp->spp_flags & FC_SPP_EST_IMG_PAIR; 2217 2218 /* 2219 * OR in our service parameters with other providers (target), if any. 2220 */ 2221 fcp_parm = ntohl(spp->spp_params); 2222 spp->spp_params = htonl(fcp_parm | lport->service_params); 2223 return FC_SPP_RESP_ACK; 2224 } 2225 2226 /* 2227 * FC-4 provider ops for FCP initiator. 2228 */ 2229 struct fc4_prov fc_rport_fcp_init = { 2230 .prli = fc_rport_fcp_prli, 2231 }; 2232 2233 /** 2234 * fc_rport_t0_prli() - Handle incoming PRLI parameters for type 0 2235 * @rdata: remote port private 2236 * @spp_len: service parameter page length 2237 * @rspp: received service parameter page 2238 * @spp: response service parameter page 2239 */ 2240 static int fc_rport_t0_prli(struct fc_rport_priv *rdata, u32 spp_len, 2241 const struct fc_els_spp *rspp, 2242 struct fc_els_spp *spp) 2243 { 2244 if (rspp->spp_flags & FC_SPP_EST_IMG_PAIR) 2245 return FC_SPP_RESP_INVL; 2246 return FC_SPP_RESP_ACK; 2247 } 2248 2249 /* 2250 * FC-4 provider ops for type 0 service parameters. 2251 * 2252 * This handles the special case of type 0 which is always successful 2253 * but doesn't do anything otherwise. 2254 */ 2255 struct fc4_prov fc_rport_t0_prov = { 2256 .prli = fc_rport_t0_prli, 2257 }; 2258 2259 /** 2260 * fc_setup_rport() - Initialize the rport_event_queue 2261 */ 2262 int fc_setup_rport(void) 2263 { 2264 rport_event_queue = create_singlethread_workqueue("fc_rport_eq"); 2265 if (!rport_event_queue) 2266 return -ENOMEM; 2267 return 0; 2268 } 2269 2270 /** 2271 * fc_destroy_rport() - Destroy the rport_event_queue 2272 */ 2273 void fc_destroy_rport(void) 2274 { 2275 destroy_workqueue(rport_event_queue); 2276 } 2277 2278 /** 2279 * fc_rport_terminate_io() - Stop all outstanding I/O on a remote port 2280 * @rport: The remote port whose I/O should be terminated 2281 */ 2282 void fc_rport_terminate_io(struct fc_rport *rport) 2283 { 2284 struct fc_rport_libfc_priv *rpriv = rport->dd_data; 2285 struct fc_lport *lport = rpriv->local_port; 2286 2287 lport->tt.exch_mgr_reset(lport, 0, rport->port_id); 2288 lport->tt.exch_mgr_reset(lport, rport->port_id, 0); 2289 } 2290 EXPORT_SYMBOL(fc_rport_terminate_io); 2291